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首页> 外文期刊>Journal of Imaging Science and Technology >Photoconduction Mechanism in Single-Layer Photoconductor with Metal-Free Phthalocyanine
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Photoconduction Mechanism in Single-Layer Photoconductor with Metal-Free Phthalocyanine

机译:不含金属酞菁的单层光电导体的光电导机理

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摘要

The photoconduction mechanism in a metal-free phthalocyanine pigment dispersed in a polymer matrix was investigated. The charging potential started to decay remarkably after a threshold light exposure. The threshold exposure increased as the initial potential increased and as the thickness of the photoconductive layer decreased. This result may indicate that the threshold exposure depends on the quantity of charge. The temperature dependence of the threshold exposure was also investigated. The threshold exposure decreases with increasing temperature. The activation energy was estimated to be 0.049eV at an electric field of 4.5 x 10~5V/cm. This value is almost equal to that of the photogeneration process in phthalocyanine. The photoinduced decay rate after the induction period increased and the activation energy decreased with increasing field intensity The anticipated field dependent phenomenon was not found in these results. Therefore, we think there is a possibility that the mechanism is different from the prevalent trap theory.
机译:研究了分散在聚合物基质中的无金属酞菁颜料的光电导机理。在阈值曝光后,充电电位开始显着下降。阈值曝光随初始电势的增加和光电导层厚度的减小而增加。该结果可能表明阈值暴露取决于电荷量。还研究了阈值暴露的温度依赖性。阈值暴露随温度升高而降低。在4.5 x 10〜5V / cm的电场下,活化能估计为0.049eV。该值几乎等于酞菁中的光生过程的值。随着电场强度的增加,诱导期后的光致衰减速率增加,活化能降低。在这些结果中未发现预期的与电场有关的现象。因此,我们认为该机制可能不同于普遍的陷阱理论。

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